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Quantum state-controlled directional spontaneous emission of photons into a nanophotonic waveguide

机译:量子态控制的光子自发定向发射到纳米光子波导中

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摘要

The spin of light in subwavelength-diameter waveguides can be orthogonal to the propagation direction of the photons because of the strong transverse confinement. This transverse spin changes sign when the direction of propagation is reversed. Using this effect, we demonstrate the directional spontaneous emission of photons by laser-trapped caesium atoms into an optical nanofibre and control their propagation direction by the excited state of the atomic emitters. In particular, we tune the spontaneous emission into the counter-propagating guided modes from symmetric to strongly asymmetric, where more than % of the optical power is launched into one or the other direction. We expect our results to have important implications for research in quantum nanophotonics and for implementations of integrated optical signal processing in the quantum regime.
机译:由于强的横向限制,亚波长直径波导中的光的自旋可以与光子的传播方向正交。当传播方向反向时,该横向旋转改变符号。利用这种效应,我们证明了激光束缚的铯原子将光子定向自发发射到光学纳米纤维中,并通过原子发射器的激发态控制其传播方向。尤其是,我们将自发发射从对称传播调整为反向传播,从强到非对称,其中超过%的光功率向一个或另一个方向发射。我们希望我们的结果对量子纳米光子学的研究以及量子态中集成光信号处理的实施具有重要意义。

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